Wang Qiang, Wang Weimin, Zhuang Xuye, Zhou Chongxi, Fan Bin
State Key Laboratory of Optical Technologies on Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Micromachines (Basel). 2021 Apr 1;12(4):378. doi: 10.3390/mi12040378.
Microelectromechanical System (MEMS)-based scanning mirrors are important optical devices that have been employed in many fields as a low-cost and miniaturized solution. In recent years, the rapid development of Light Detection and Ranging (LiDAR) has led to opportunities and challenges for MEMS scanners. In this work, we propose a 2D electrostatically actuated micro raster scanner with relatively large aperture. The 2D scanner combines a resonant scanning axis driven by an in-plane comb and a quasistatic scanning axis driven by a vertical comb, which is achieved by raising the moving comb finger above the fixed comb finger through the residual stress gradient. The analytic formula for the resonant axis frequency, based on the mechanical coupling of two oscillation modes, is derived and compared with finite element simulation. A prototype is designed, fabricated, and tested, and an overall optical Field-of-View (FoV) of about 60° × 4° is achieved. Finally, some possibilities for further improvement or optimization are discussed.
基于微机电系统(MEMS)的扫描镜是重要的光学器件,已作为一种低成本、小型化的解决方案应用于许多领域。近年来,激光探测与测距(LiDAR)的快速发展给MEMS扫描仪带来了机遇和挑战。在这项工作中,我们提出了一种具有相对大孔径的二维静电驱动微光栅扫描仪。该二维扫描仪结合了由平面内梳齿驱动的共振扫描轴和由垂直梳齿驱动的准静态扫描轴,这是通过残余应力梯度使移动梳齿指高于固定梳齿指来实现的。基于两种振荡模式的机械耦合,推导了共振轴频率的解析公式,并与有限元模拟进行了比较。设计、制造并测试了一个原型,实现了约60°×4°的整体光学视场(FoV)。最后,讨论了进一步改进或优化的一些可能性。